Two competing models for long-range electron transport through the conductive biofilms and nanowires of Geobacter sulfurreducens exist. In one model electrons are transported via pili that possess delocalized electronic states to function as protein wires with metallic-like conductivity. In the other model electrons are transported by more traditional electron transfer via electron hopping/tunneling between the c-type cytochromes in G. sulfurreducens biofilms and pili. The cytochrome hypothesis was further examined. Quantifying c-type cytochromes in G. sulfurreducens biofilms and pili indicated that there are insufficient cytochromes to account for electron transport through the bulk of the biofilm or pili and demonstrated that there is a n...
ABSTRACT It has been proposed that Geobacter sulfurreducens requires conductive pili for long-range ...
Electron transport within living cells is essential for energy conservation in all respiring and pho...
Electroactive bacteria can use a polarized electrode as final electron acceptor, allowing the use of...
Electron transport is a fundamental mechanism in a variety of biological systems such as photosynthe...
Geobacter sulfurreducens bacteria grow on biofilms and have the particular ability of using polarize...
ABSTRACT The discovery of bacterial conductive structures, termed nanowires, has intrigued scientist...
Geobacter sulfurreducens is a model microbe for elucidating the mechanisms for extracellular electro...
ABSTRACT The discovery of bacterial conductive structures, termed nanowires, has intrigued scientist...
ABSTRACT Geobacter sulfurreducens is a model microbe for elucidating the mechanisms for extracellula...
While actual models explaining electron conduction in electricity producing biofilms have evolved se...
The mechanism of electron transport in Geobacter sulfurreducensbiofilms is a topic under intense stu...
A paper published in Energy and Environmental Science by Strycharz-Glaven et al. suggests that elect...
Electron transfer is central to cellular life, from photosynthesis to respiration. In the case of an...
Lack of cytochrome involvement in long-range electron transport through conductive biofilms and nano...
It has been proposed that Geobacter sulfurreducens requires conductive pili for long-range electron ...
ABSTRACT It has been proposed that Geobacter sulfurreducens requires conductive pili for long-range ...
Electron transport within living cells is essential for energy conservation in all respiring and pho...
Electroactive bacteria can use a polarized electrode as final electron acceptor, allowing the use of...
Electron transport is a fundamental mechanism in a variety of biological systems such as photosynthe...
Geobacter sulfurreducens bacteria grow on biofilms and have the particular ability of using polarize...
ABSTRACT The discovery of bacterial conductive structures, termed nanowires, has intrigued scientist...
Geobacter sulfurreducens is a model microbe for elucidating the mechanisms for extracellular electro...
ABSTRACT The discovery of bacterial conductive structures, termed nanowires, has intrigued scientist...
ABSTRACT Geobacter sulfurreducens is a model microbe for elucidating the mechanisms for extracellula...
While actual models explaining electron conduction in electricity producing biofilms have evolved se...
The mechanism of electron transport in Geobacter sulfurreducensbiofilms is a topic under intense stu...
A paper published in Energy and Environmental Science by Strycharz-Glaven et al. suggests that elect...
Electron transfer is central to cellular life, from photosynthesis to respiration. In the case of an...
Lack of cytochrome involvement in long-range electron transport through conductive biofilms and nano...
It has been proposed that Geobacter sulfurreducens requires conductive pili for long-range electron ...
ABSTRACT It has been proposed that Geobacter sulfurreducens requires conductive pili for long-range ...
Electron transport within living cells is essential for energy conservation in all respiring and pho...
Electroactive bacteria can use a polarized electrode as final electron acceptor, allowing the use of...